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Effects Of Platinum From Vehicle Exhaust Catalyst On Carbon And Nitrogen Mineralization In Soils

机译:机动车尾气催化剂中铂对土壤碳氮矿化的影响

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There is strong evidence of continuously increasing contamination of soils with platinum group elements (PGE), in particular with platinum (Pt) from vehicle exhaust catalysts in roadside soils. However, knowledge about the effects of Pt contamination on soil processes is very limited. The objective of this study was to investigate whether the contamination of soils with Pt at realistic environmental levels leads to observable adverse effects on selected indicator parameters of the carbon and nitrogen turnover in soils. Incubation experiments with artificially contaminated soils and solutions containing dissolved organic matter (DOM) were carried out by the use of milled material from a Pt-containing vehicle exhaust catalyst. Interaction of the catalyst material with the soil resulted in a mobilization of Pt into the dissolved phase reaching up to 0.1% of the added Pt. The amount of Pt mobilization seemed to be mainly driven by the pH of the soil. Mineralization of carbon and nitrogen did not reveal any significant adverse effect of the Pt addition as compared to the control samples. Future studies dealing with Pt effects on soil processes should focus on environmental conditions favoring Pt mobilization, e.g. such as very low pH values or large concentrations of DOM.
机译:强有力的证据表明,土壤中铂族元素(PGE)的污染不断增加,尤其是路边土壤中车辆尾气催化剂中铂(Pt)的污染。但是,关于Pt污染对土壤过程影响的知识非常有限。这项研究的目的是调查在实际环境水平下Pt对土壤的污染是否会对土壤中碳和氮转化的选定指标参数产生可观察到的不利影响。人工污染土壤和含有溶解性有机物(DOM)的溶液的温育实验是通过使用含Pt车辆尾气催化剂的研磨材料进行的。催化剂材料与土壤的相互作用导致Pt动员到溶解相中,最高达到添加Pt的0.1%。 Pt的迁移量似乎主要由土壤的pH值驱动。与对照样品相比,碳和氮的矿化没有显示出添加Pt有任何明显的不利影响。未来有关Pt对土壤过程影响的研究应集中在有利于Pt动员的环境条件上,例如例如非常低的pH值或高浓度的DOM。

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